高硅电工钢超薄带冷轧过程中的织构演变

采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于λ(〈100〉//ND,ND为轧面法线方向)和η(〈100〉//RD,RD为轧向)再结晶织构优化的形变织构控制方法.研究表明,50%~70%压下率有利于η再结晶织构优化,易于促进S=0.5层强η再结晶织构的形成.小于30%压下率和91%~97%压下率均有利于λ再结晶织构优化,其中30%的压下率更适合于二次冷轧法制备高硅钢超薄带时λ再结晶织构控制....

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Published in东北大学学报(自然科学版) Vol. 38; no. 5; pp. 645 - 649
Main Author 柳金龙 沙玉辉 邵光帅 左良
Format Journal Article
LanguageChinese
Published 东北大学 材料各向异性与织构教育部重点实验室,辽宁 沈阳,110819 2017
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ISSN1005-3026
DOI10.3969/j.issn.1005-3026.2017.05.008

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Abstract 采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于λ(〈100〉//ND,ND为轧面法线方向)和η(〈100〉//RD,RD为轧向)再结晶织构优化的形变织构控制方法.研究表明,50%~70%压下率有利于η再结晶织构优化,易于促进S=0.5层强η再结晶织构的形成.小于30%压下率和91%~97%压下率均有利于λ再结晶织构优化,其中30%的压下率更适合于二次冷轧法制备高硅钢超薄带时λ再结晶织构控制.
AbstractList 采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于λ(〈100〉//ND,ND为轧面法线方向)和η(〈100〉//RD,RD为轧向)再结晶织构优化的形变织构控制方法.研究表明,50%~70%压下率有利于η再结晶织构优化,易于促进S=0.5层强η再结晶织构的形成.小于30%压下率和91%~97%压下率均有利于λ再结晶织构优化,其中30%的压下率更适合于二次冷轧法制备高硅钢超薄带时λ再结晶织构控制.
TG132.271; 采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于 λ( //ND,ND为轧面法线方向)和η( //RD,RD为轧向)再结晶织构优化的形变织构控制方法.研究表明,50%~70%压下率有利于η再结晶织构优化,易于促进S=0.5层强η再结晶织构的形成.小于30%压下率和91%~97%压下率均有利于λ再结晶织构优化,其中30%的压下率更适合于二次冷轧法制备高硅钢超薄带时λ再结晶织构控制.
Abstract_FL High silicon electrical steel ultra-thin sheets of 0. 10 mm thick, containing about 6. 5%Si, were prepared by rolling method. The evolution of deformation texture during cold rolling was studied using X-ray diffraction. Then the methods of controlling deformation texture were proposed in favor of the λ ( //ND, normal direction ) and η ( //RD, rolling direction) recrystallization texture, respectively. The rolling reduction between 50% and 70% is easy to promote the formation of theηrecrystallization texture at the layer of S=0. 5. While, the rolling reductions of either less than 30% or 91% ~97% are in favor of λ recrystallization texture, in which the former reduction is more suitable to control the λ recrystallization texture when using a two-stage cold rolling method to prepare high silicon steel ultra-thin sheets.
Author 柳金龙 沙玉辉 邵光帅 左良
AuthorAffiliation 东北大学材料各向异性与织构教育部重点实验室,辽宁沈阳110819
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Author_FL LIU Jin-long
SHAO Guang-shuai
ZOU Liang
SHA Yu-hui
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DocumentTitle_FL Texture Evolution of High Silicon Steel Ultra-thin Sheets During Cold Rolling
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Keywords high silicon steel
高硅钢
薄带
织构
Fe-6.5%Si
texture
Fe-6. 5% Si
cold rolling
冷轧
thin sheets
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PublicationTitle 东北大学学报(自然科学版)
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PublicationTitle_FL Journal of Northeastern University(Natural Science)
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Snippet 采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于λ(〈100〉//ND,ND为轧面法线方...
TG132.271; 采用轧制工艺制备了0.10 mm厚的6.5%Si高硅电工钢超薄带,并用X射线衍射技术对冷轧过程中的形变织构演变规律进行了研究,进而提出了分别有利于 λ( //ND,ND为轧面...
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StartPage 645
SubjectTerms Fe-6.5%Si
冷轧
织构
薄带
高硅钢
Title 高硅电工钢超薄带冷轧过程中的织构演变
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